Review of Sc microalloying effects in Al–Cu alloys

被引:0
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作者
Shenghua Wu [1 ]
Chong Yang [1 ]
Peng Zhang [1 ]
Hang Xue [1 ]
Yihan Gao [1 ,2 ]
Yuqing Wang [1 ]
Ruihong Wang [3 ]
Jinyu Zhang [1 ]
Gang Liu [1 ]
Jun Sun [1 ]
机构
[1] State Key Laboratory for Mechanical Behavior of Materials,Xi'an Jiaotong University
[2] School of Aerospace Engineering,North University of China
[3] School of Materials Science and Engineering,Xi'an University of Technology
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TG146.21 [];
学科分类号
摘要
Artificially controlling the solid-state precipitation in aluminum (Al) alloys is an efficient way to achieve well-performed properties,and the microalloying strategy is the most frequently adopted method for such a purpose.In this paper,recent advances in lengthscale-dependent scandium (Sc) microalloying effects in Al–Cu model alloys are reviewed.In coarse-grained Al–Cu alloys,the Sc-aided Cu/Sc/vacancies complexes that act as heterogeneous nuclei and Sc segregation at the θ′-Al2Cu/matrix interface that reduces interfacial energy contribute significantly to θ′precipitation.By grain size refinement to the fine/ultrafine-grained scale,the strongly bonded Cu/Sc/vacancies complexes inhibit Cu and vacancy diffusing toward grain boundaries,promoting the desired intragranular θ′precipitation.At nanocrystalline scale,the applied high strain producing high-density vacancies results in the formation of a large quantity of (Cu Sc,vacancy)-rich atomic complexes with high thermal stability,outstandingly improving the strength/ductility synergy and preventing the intractable low-temperature precipitation.This review recommends the use of microalloying technology to modify the precipitation behaviors toward better combined mechanical properties and thermal stability in Al alloys.
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页码:1098 / 1114
页数:17
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